DocumentCode :
334274
Title :
Approximate analytical description of the underdense plasma lens
Author :
Amatuni, A.Ts.
Author_Institution :
Yerevan Phys. Inst., Armenia
Volume :
1
fYear :
1997
fDate :
12-16 May 1997
Firstpage :
690
Abstract :
The perturbative approach for describing the underdense plasma-ultrarelativistic electron bunch system is developed, using the ratio n0/nb as a small parameter (nb-bunch, n0-plasma electron densities). It is shown that in the zero and first approximations for the ultrarelativistic bunch case the role of positive ion column is negligible (~O(γ-2), where γ0 is the Lorentz factor of the bunch) for the arbitrary bunch length. Focusing of the electron bunch emerged in the first approximation of the perturbative procedure as a result of the plasma electrons redistribution. Focusing gradient and strength for ultrarelativistic, flat, uniform and short bunch are obtained and compared with the previous results, which differs drastically from the obtained ones. The plasma chamber conducting walls effect on focusing force is considered by the method of images, adopting the diffuse scattering of plasma electrons on the walls. The effect is small, when the plasma chamber width is much larger than that of bunch
Keywords :
collective accelerators; electron beam focusing; linear colliders; particle beam bunching; perturbation theory; plasma focus; positive column; relativistic electron beams; approximate analytical description; diffuse scattering; electron bunch focusing; linear colliders; perturbative approach; plasma electrons redistribution; positive ion column; underdense plasma lens; underdense plasma-ultrarelativistic electron bunch; Electron beams; Electron mobility; Focusing; Geometry; Lenses; Particle beams; Physics; Plasma density; Plasma devices; Positrons;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Particle Accelerator Conference, 1997. Proceedings of the 1997
Conference_Location :
Vancouver, BC
Print_ISBN :
0-7803-4376-X
Type :
conf
DOI :
10.1109/PAC.1997.749807
Filename :
749807
Link To Document :
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